DAC8811ICDGKTG4 Allicdata Electronics
Allicdata Part #:

DAC8811ICDGKTG4-ND

Manufacturer Part#:

DAC8811ICDGKTG4

Price: $ 8.86
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC DAC 16BIT SER 300NS 8VSSOP
More Detail: 16 Bit Digital to Analog Converter 1 8-VSSOP
DataSheet: DAC8811ICDGKTG4 datasheetDAC8811ICDGKTG4 Datasheet/PDF
Quantity: 1000
250 +: $ 8.05518
Stock 1000Can Ship Immediately
$ 8.86
Specifications
Reference Type: External
Base Part Number: DAC8811
Supplier Device Package: 8-VSSOP
Package / Case: 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
Operating Temperature: -40°C ~ 85°C
Architecture: Multiplying DAC
INL/DNL (LSB): ±2 (Max), ±0.5
Voltage - Supply, Digital: 2.7 V ~ 5.5 V
Voltage - Supply, Analog: 2.7 V ~ 5.5 V
Series: --
Data Interface: SPI
Differential Output: No
Output Type: Current - Unbuffered
Settling Time: 500ns (Typ)
Number of D/A Converters: 1
Number of Bits: 16
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Data Acquisition - Digital to Analog Converters (DAC) are essential components in the process of data conversion, as they allow analog signals to be converted into digital signals. This conversion is often necessary in order to store, process or transmit the data, and the performance of the converter is a critical factor in determining the accuracy and data rate of the application. The DAC8811ICDGKTG4 is a high-performance data acquisition IC with advanced features and is commonly used in many applications.

The DAC8811ICDGKTG4 is a multichannel device, offering 24-bit resolution across eight channels. It has voltage input, current output, and differential or single-ended output modes, allowing a range of signal types to be converted. It also has programmable gain amplifiers, enabling the signal to be amplified or attenuated to achieve the desired input range. The device offers an output rate of up to 1Msps, providing high-speed data acquisition with a maximum data rate of 100Msps per channel. In addition, it has an onboard temperature sensor and an integrated programmable logic device, allowing for greater flexibility and customization. The device is also highly reliable, with a typical failure rate of less than 0.01%.

The DAC8811ICDGKTG4 has a wide range of applications due to its high performance and flexibility. It can be used in medical imaging systems, where it provides accurate images with excellent resolution and high sampling rates. It is also commonly used in industrial applications, as it supports a variety of signal types, offers high sampling data speeds, and can be used to measure high-speed transients or test complex signals with multiple components. In addition, it is used in automotive applications, optical communications, radar systems, and communication systems. As the device can be programmed via an I2C interface, it is suitable for applications that require remote control or reconfiguration. This makes the device well-suited for embedded systems where the configuration needs to be adjusted without hardware modifications.

The DAC8811ICDGKTG4 works by converting digital input signals into analog output signals. The input signals are first converted to binary values, which are then multiplied by a reference voltage to generate the analog output signal. The reference voltage is generated from an internal oscillator, and its value is determined by the digital code input. It is then amplified or attenuated based on the programmed gain settings, which are also controlled by the digital code. The amplified signal is then converted back to an analog form, producing the output signal. The output signal is then filtered, producing a signal with low distortion, wide bandwidth, and low noise.

In summary, the DAC8811ICDGKTG4 is a high-performance and highly reliable data acquisition IC, making it suitable for a wide range of applications. It offers excellent signal resolution, high sampling data speeds, and a range of signal types, as well as onboard temperature sensing, programmable logic, and programmable gain amplifiers. The device works by converting digital input signals into analog output signals through a process of binary conversion, reference voltage multiplication, gain adjustment, and signal filtering.

The specific data is subject to PDF, and the above content is for reference

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